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The mechanism of neutral red-mediated microbial electrosynthesis in Escherichia coli: menaquinone reduction

机译:大肠杆菌中性红介导的微生物电合成机理:甲萘醌还原

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摘要

The aim of this work was to elucidate the mechanism of mediated microbial electrosynthesis via neutral red from an electrode to fermenting Escherichia coli cultures in a bioelectrochemical system. Chemical reduction of NAD+ by reduced neutral red did not occur as predicted. Instead, neutral red was shown to reduce the menaquinone pool in the inner bacterial membrane. The reduced menaquinone pool altered fermentative metabolite production via the arcB redoxsensing cascade in the absence of terminal electron acceptors. When the acceptors DMSO, fumarate, or nitrate were provided, as many as 19% of the electrons trapped in the reduced acceptors were derived from the electrode. These results demonstrate the mechanism of neutral red-mediated microbial electrosynthesis during fermentation as well as how neutral red enables microbial electrosynthesis of reduced terminal electron acceptors.
机译:这项工作的目的是阐明从电极到生物电化学系统中发酵大肠杆菌培养物的中性红介导的微生物电合成的机制。通过还原的中性红未化学还原NAD + 。取而代之的是,中性红显示减少了内部细菌膜中的甲萘醌库。在没有末端电子受体的情况下,减少的甲萘醌库通过arcB氧化还原级联改变了发酵代谢产物的产生。当提供受体DMSO,富马酸酯或硝酸盐时,被还原的受体中捕获的电子中多达19%来自电极。这些结果证明了发酵过程中中性红介导的微生物电合成的机理,以及中性红如何使还原端电子受体的微生物电化成为可能。

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